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Updated: Oct 6, 2025

Author Spotlight: An Antimicrobial Fabric Using Nano-Herbal Encapsulation of Essential Oils
Published on: April 7, 2023
Nanoparticles-Attractive Carriers of Antimicrobial Essential Oils
Arya Nair1, Rashmi Mallya1, Vasanti Suvarna2
1Department of Quality Assurance, SVKM's Dr. Bhanuben Nanavati College of Pharmacy, Mumbai 400056, Maharashtra, India.
Abstract:
Microbial pathogens are the most prevalent cause of chronic infections and fatalities around the world. Antimicrobial agents including antibiotics have been frequently utilized in the treatment of infections due to their exceptional outcomes. However, their widespread use has resulted in the emergence of multidrug-resistant strains of bacteria, fungi, viruses, and parasites. Furthermore, due to inherent resistance to antimicrobial drugs and the host defence system, the advent of new infectious diseases, chronic infections, and the occurrence of biofilms pose a tougher challenge to the current treatment line. Essential oils (EOs) and their biologically and structurally diverse constituents provide a distinctive, inexhaustible, and novel source of antibacterial, antiviral, antifungal, and antiparasitic agents. However, due to their volatile nature, chemical susceptibility, and poor solubility, their development as antimicrobials is limited. Nanoparticles composed of biodegradable polymeric and inorganic materials have been studied extensively to overcome these limitations. Nanoparticles are being investigated as nanocarriers for antimicrobial delivery, antimicrobial coatings for food products, implantable devices, and medicinal materials in dressings and packaging materials due to their intrinsic capacity to overcome microbial resistance. Essential oil-loaded nanoparticles may offer the potential benefits of synergism in antimicrobial activity, high loading capacity, increased solubility, decreased volatility, chemical stability, and enhancement of the bioavailability and shelf life of EOs and their constituents. This review focuses on the potentiation of the antimicrobial activity of essential oils and their constituents in nanoparticulate delivery systems for a wide range of applications, such as food preservation, packaging, and alternative treatments for infectious diseases.
Insights
Essential oils (EOs) show promise as antimicrobials, but nanoparticles enhance their effectiveness. This review explores EO-loaded nanoparticles for combating drug-resistant microbes in various applications.
Area of Science:
- Microbiology
- Nanotechnology
- Pharmacology
Background:
- Microbial pathogens cause global infections and fatalities, with rising multidrug resistance limiting antibiotic efficacy.
- Biofilms, chronic infections, and new diseases present significant challenges to existing antimicrobial treatments.
- Essential oils (EOs) offer novel antimicrobial properties but face limitations like volatility and poor solubility.
Purpose of the Study:
- To review the potentiation of antimicrobial activity of essential oils (EOs) and their constituents using nanoparticulate delivery systems.
- To explore the application of EO-loaded nanoparticles in food preservation, packaging, and alternative infectious disease treatments.
- To highlight how nanoparticles overcome limitations of EOs for enhanced antimicrobial efficacy.
Main Methods:
- Review of existing literature on essential oils and nanoparticle formulations.
- Analysis of studies investigating the antimicrobial activity of EO-loaded nanoparticles against various pathogens.
- Evaluation of applications in food safety, medical devices, and therapeutic interventions.
Main Results:
- Nanoparticulate systems enhance EO solubility, stability, and bioavailability, overcoming inherent limitations.
- EO-loaded nanoparticles demonstrate synergistic antimicrobial effects and improved efficacy against resistant strains.
- Applications include antimicrobial coatings, food packaging, and novel treatments for infectious diseases.
Conclusions:
- Nanoparticulate delivery systems significantly potentiate the antimicrobial activity of essential oils.
- EO-loaded nanoparticles represent a promising strategy to combat multidrug-resistant microbes and enhance product shelf-life.
- This approach offers a viable alternative for infectious disease management and food preservation.
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